Patient-specific iPSCs carrying an SFTPC mutation reveal the intrinsic alveolar epithelial dysfunction at the inception of interstitial lung disease (ILD)

Updated March 14, 2025

Alveolar epithelial type 2 cell (AEC2) dysfunction is implicated in the pathogenesis of adult and pediatric interstitial lung disease (ILD), including idiopathic pulmonary fibrosis (IPF); however, identification of disease-initiating mechanisms has been impeded by inability to access primary AEC2s early on. Here, we present a human in vitro model permitting investigation of epithelial-intrinsic events culminating in AEC2 dysfunction, using patient-specific induced pluripotent stem cells (iPSCs) carrying an AEC2-exclusive disease-associated variant (SFTPCI73T). Comparing syngeneic mutant versus gene-corrected iPSCs after differentiation into AEC2s (iAEC2s), we find that mutant iAEC2s accumulate large amounts of misprocessed and mistrafficked pro-SFTPC protein, similar to in vivo changes, resulting in diminished AEC2 progenitor capacity, perturbed proteostasis, altered bioenergetic programs, time-dependent metabolic reprogramming, and nuclear factor κB (NF-κB) pathway activation. Treatment of SFTPCI73T-expressing iAEC2s with hydroxychloroquine, a medication used in pediatric ILD, aggravates the observed perturbations. Thus, iAEC2s provide a patient-specific preclinical platform for modeling the epithelial-intrinsic dysfunction at ILD inception.

Darrell KottonBoston Universitydkotton@bu.edu
Darrell Kotton (Principal Investigator)1
Alysandratos Konstantinos (Co-Investigator)1
Pushpinder Bawa (Computational Scientist)1
1Boston University
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Project Label

Patient-specific iPSCs carrying an SFTPC mutation reveal the intrinsic alveolar epithelial dysfunction at the inception of interstitial lung disease (ILD)

Species

Homo sapiens

Sample Type

specimens

Anatomical Entity

skin of body

Organ Part

dermis

Selected Cell Types

type II pneumocyte

Disease Status (Specimen)

interstitial lung disease

Disease Status (Donor)

interstitial lung disease

Development Stage

adolescent stage

Library Construction Method

10x 3' v3

Nucleic Acid Source

single cell

Paired End

true

Analysis Protocol

62c79dd3-0306-4c09-bc14-94bce46eaf9a

File Format

2 file formats

Cell Count Estimate

Unspecified

Donor Count

1
fastq.gz48 file(s)h54 file(s)